jj_lib/
simple_op_store.rs

1// Copyright 2020 The Jujutsu Authors
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// https://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
15#![expect(missing_docs)]
16
17use std::collections::BTreeMap;
18use std::collections::HashMap;
19use std::collections::HashSet;
20use std::fmt::Debug;
21use std::fs;
22use std::io;
23use std::io::ErrorKind;
24use std::io::Write as _;
25use std::path::Path;
26use std::path::PathBuf;
27use std::time::SystemTime;
28
29use async_trait::async_trait;
30use itertools::Itertools as _;
31use pollster::FutureExt as _;
32use prost::Message as _;
33use smallvec::SmallVec;
34use tempfile::NamedTempFile;
35use thiserror::Error;
36
37use crate::backend::BackendInitError;
38use crate::backend::CommitId;
39use crate::backend::MillisSinceEpoch;
40use crate::backend::Timestamp;
41use crate::content_hash::blake2b_hash;
42use crate::dag_walk;
43use crate::file_util::IoResultExt as _;
44use crate::file_util::PathError;
45use crate::file_util::persist_content_addressed_temp_file;
46use crate::merge::Merge;
47use crate::object_id::HexPrefix;
48use crate::object_id::ObjectId;
49use crate::object_id::PrefixResolution;
50use crate::op_store;
51use crate::op_store::OpStore;
52use crate::op_store::OpStoreError;
53use crate::op_store::OpStoreResult;
54use crate::op_store::Operation;
55use crate::op_store::OperationId;
56use crate::op_store::OperationMetadata;
57use crate::op_store::RefTarget;
58use crate::op_store::RemoteRef;
59use crate::op_store::RemoteRefState;
60use crate::op_store::RemoteView;
61use crate::op_store::RootOperationData;
62use crate::op_store::TimestampRange;
63use crate::op_store::View;
64use crate::op_store::ViewId;
65use crate::ref_name::GitRefNameBuf;
66use crate::ref_name::RefNameBuf;
67use crate::ref_name::RemoteNameBuf;
68use crate::ref_name::WorkspaceName;
69use crate::ref_name::WorkspaceNameBuf;
70
71// BLAKE2b-512 hash length in bytes
72const OPERATION_ID_LENGTH: usize = 64;
73const VIEW_ID_LENGTH: usize = 64;
74
75/// Error that may occur during [`SimpleOpStore`] initialization.
76#[derive(Debug, Error)]
77#[error("Failed to initialize simple operation store")]
78pub struct SimpleOpStoreInitError(#[from] pub PathError);
79
80impl From<SimpleOpStoreInitError> for BackendInitError {
81    fn from(err: SimpleOpStoreInitError) -> Self {
82        Self(err.into())
83    }
84}
85
86#[derive(Debug)]
87pub struct SimpleOpStore {
88    path: PathBuf,
89    root_data: RootOperationData,
90    root_operation_id: OperationId,
91    root_view_id: ViewId,
92}
93
94impl SimpleOpStore {
95    pub fn name() -> &'static str {
96        "simple_op_store"
97    }
98
99    /// Creates an empty OpStore. Returns error if it already exists.
100    pub fn init(
101        store_path: &Path,
102        root_data: RootOperationData,
103    ) -> Result<Self, SimpleOpStoreInitError> {
104        let store = Self::new(store_path, root_data);
105        store.init_base_dirs()?;
106        Ok(store)
107    }
108
109    /// Load an existing OpStore
110    pub fn load(store_path: &Path, root_data: RootOperationData) -> Self {
111        Self::new(store_path, root_data)
112    }
113
114    fn new(store_path: &Path, root_data: RootOperationData) -> Self {
115        Self {
116            path: store_path.to_path_buf(),
117            root_data,
118            root_operation_id: OperationId::from_bytes(&[0; OPERATION_ID_LENGTH]),
119            root_view_id: ViewId::from_bytes(&[0; VIEW_ID_LENGTH]),
120        }
121    }
122
123    fn init_base_dirs(&self) -> Result<(), PathError> {
124        for dir in [self.views_dir(), self.operations_dir()] {
125            fs::create_dir(&dir).context(&dir)?;
126        }
127        Ok(())
128    }
129
130    fn views_dir(&self) -> PathBuf {
131        self.path.join("views")
132    }
133
134    fn operations_dir(&self) -> PathBuf {
135        self.path.join("operations")
136    }
137}
138
139#[async_trait]
140impl OpStore for SimpleOpStore {
141    fn name(&self) -> &str {
142        Self::name()
143    }
144
145    fn root_operation_id(&self) -> &OperationId {
146        &self.root_operation_id
147    }
148
149    async fn read_view(&self, id: &ViewId) -> OpStoreResult<View> {
150        if *id == self.root_view_id {
151            return Ok(View::make_root(self.root_data.root_commit_id.clone()));
152        }
153
154        let path = self.views_dir().join(id.hex());
155        let buf = fs::read(&path)
156            .context(&path)
157            .map_err(|err| io_to_read_error(err, id))?;
158
159        let proto = crate::protos::simple_op_store::View::decode(&*buf)
160            .map_err(|err| to_read_error(err.into(), id))?;
161        view_from_proto(proto).map_err(|err| to_read_error(err.into(), id))
162    }
163
164    async fn write_view(&self, view: &View) -> OpStoreResult<ViewId> {
165        let dir = self.views_dir();
166        let temp_file = NamedTempFile::new_in(&dir)
167            .context(&dir)
168            .map_err(|err| io_to_write_error(err, "view"))?;
169
170        let proto = view_to_proto(view);
171        temp_file
172            .as_file()
173            .write_all(&proto.encode_to_vec())
174            .context(temp_file.path())
175            .map_err(|err| io_to_write_error(err, "view"))?;
176
177        let id = ViewId::new(blake2b_hash(view).to_vec());
178
179        let new_path = dir.join(id.hex());
180        persist_content_addressed_temp_file(temp_file, &new_path)
181            .context(&new_path)
182            .map_err(|err| io_to_write_error(err, "view"))?;
183        Ok(id)
184    }
185
186    async fn read_operation(&self, id: &OperationId) -> OpStoreResult<Operation> {
187        if *id == self.root_operation_id {
188            return Ok(Operation::make_root(self.root_view_id.clone()));
189        }
190
191        let path = self.operations_dir().join(id.hex());
192        let buf = fs::read(&path)
193            .context(&path)
194            .map_err(|err| io_to_read_error(err, id))?;
195
196        let proto = crate::protos::simple_op_store::Operation::decode(&*buf)
197            .map_err(|err| to_read_error(err.into(), id))?;
198        let mut operation =
199            operation_from_proto(proto).map_err(|err| to_read_error(err.into(), id))?;
200        if operation.parents.is_empty() {
201            // Repos created before we had the root operation will have an operation without
202            // parents.
203            operation.parents.push(self.root_operation_id.clone());
204        }
205        Ok(operation)
206    }
207
208    async fn write_operation(&self, operation: &Operation) -> OpStoreResult<OperationId> {
209        assert!(!operation.parents.is_empty());
210        let dir = self.operations_dir();
211        let temp_file = NamedTempFile::new_in(&dir)
212            .context(&dir)
213            .map_err(|err| io_to_write_error(err, "operation"))?;
214
215        let proto = operation_to_proto(operation);
216        temp_file
217            .as_file()
218            .write_all(&proto.encode_to_vec())
219            .context(temp_file.path())
220            .map_err(|err| io_to_write_error(err, "operation"))?;
221
222        let id = OperationId::new(blake2b_hash(operation).to_vec());
223
224        let new_path = dir.join(id.hex());
225        persist_content_addressed_temp_file(temp_file, &new_path)
226            .context(&new_path)
227            .map_err(|err| io_to_write_error(err, "operation"))?;
228        Ok(id)
229    }
230
231    async fn resolve_operation_id_prefix(
232        &self,
233        prefix: &HexPrefix,
234    ) -> OpStoreResult<PrefixResolution<OperationId>> {
235        let op_dir = self.operations_dir();
236        let find = || -> io::Result<_> {
237            let matches_root = prefix.matches(&self.root_operation_id);
238            let hex_prefix = prefix.hex();
239            if hex_prefix.len() == OPERATION_ID_LENGTH * 2 {
240                // Fast path for full-length ID
241                if matches_root || op_dir.join(hex_prefix).try_exists()? {
242                    let id = OperationId::from_bytes(prefix.as_full_bytes().unwrap());
243                    return Ok(PrefixResolution::SingleMatch(id));
244                } else {
245                    return Ok(PrefixResolution::NoMatch);
246                }
247            }
248
249            let mut matched = matches_root.then(|| self.root_operation_id.clone());
250            for entry in op_dir.read_dir()? {
251                let Ok(name) = entry?.file_name().into_string() else {
252                    continue; // Skip invalid UTF-8
253                };
254                if !name.starts_with(&hex_prefix) {
255                    continue;
256                }
257                let Some(id) = OperationId::try_from_hex(&name) else {
258                    continue; // Skip invalid hex
259                };
260                if matched.is_some() {
261                    return Ok(PrefixResolution::AmbiguousMatch);
262                }
263                matched = Some(id);
264            }
265            if let Some(id) = matched {
266                Ok(PrefixResolution::SingleMatch(id))
267            } else {
268                Ok(PrefixResolution::NoMatch)
269            }
270        };
271        find()
272            .context(&op_dir)
273            .map_err(|err| OpStoreError::Other(err.into()))
274    }
275
276    #[tracing::instrument(skip(self))]
277    fn gc(&self, head_ids: &[OperationId], keep_newer: SystemTime) -> OpStoreResult<()> {
278        let to_op_id = |entry: &fs::DirEntry| -> Option<OperationId> {
279            let name = entry.file_name().into_string().ok()?;
280            OperationId::try_from_hex(name)
281        };
282        let to_view_id = |entry: &fs::DirEntry| -> Option<ViewId> {
283            let name = entry.file_name().into_string().ok()?;
284            ViewId::try_from_hex(name)
285        };
286        let remove_file_if_not_new = |entry: &fs::DirEntry| -> Result<(), PathError> {
287            let path = entry.path();
288            // Check timestamp, but there's still TOCTOU problem if an existing
289            // file is renewed.
290            let metadata = entry.metadata().context(&path)?;
291            let mtime = metadata.modified().expect("unsupported platform?");
292            if mtime > keep_newer {
293                tracing::trace!(?path, "not removing");
294                Ok(())
295            } else {
296                tracing::trace!(?path, "removing");
297                fs::remove_file(&path).context(&path)
298            }
299        };
300
301        // Reachable objects are resolved without considering the keep_newer
302        // parameter. We could collect ancestors of the "new" operations here,
303        // but more files can be added anyway after that.
304        let read_op = |id: &OperationId| {
305            self.read_operation(id)
306                .block_on()
307                .map(|data| (id.clone(), data))
308        };
309        let reachable_ops: HashMap<OperationId, Operation> = dag_walk::dfs_ok(
310            head_ids.iter().map(read_op),
311            |(id, _)| id.clone(),
312            |(_, data)| data.parents.iter().map(read_op).collect_vec(),
313        )
314        .try_collect()?;
315        let reachable_views: HashSet<&ViewId> =
316            reachable_ops.values().map(|data| &data.view_id).collect();
317        tracing::info!(
318            reachable_op_count = reachable_ops.len(),
319            reachable_view_count = reachable_views.len(),
320            "collected reachable objects"
321        );
322
323        let prune_ops = || -> Result<(), PathError> {
324            let op_dir = self.operations_dir();
325            for entry in op_dir.read_dir().context(&op_dir)? {
326                let entry = entry.context(&op_dir)?;
327                let Some(id) = to_op_id(&entry) else {
328                    tracing::trace!(?entry, "skipping invalid file name");
329                    continue;
330                };
331                if reachable_ops.contains_key(&id) {
332                    continue;
333                }
334                // If the operation was added after collecting reachable_views,
335                // its view mtime would also be renewed. So there's no need to
336                // update the reachable_views set to preserve the view.
337                remove_file_if_not_new(&entry)?;
338            }
339            Ok(())
340        };
341        prune_ops().map_err(|err| OpStoreError::Other(err.into()))?;
342
343        let prune_views = || -> Result<(), PathError> {
344            let view_dir = self.views_dir();
345            for entry in view_dir.read_dir().context(&view_dir)? {
346                let entry = entry.context(&view_dir)?;
347                let Some(id) = to_view_id(&entry) else {
348                    tracing::trace!(?entry, "skipping invalid file name");
349                    continue;
350                };
351                if reachable_views.contains(&id) {
352                    continue;
353                }
354                remove_file_if_not_new(&entry)?;
355            }
356            Ok(())
357        };
358        prune_views().map_err(|err| OpStoreError::Other(err.into()))?;
359
360        Ok(())
361    }
362}
363
364fn io_to_read_error(err: PathError, id: &impl ObjectId) -> OpStoreError {
365    if err.source.kind() == ErrorKind::NotFound {
366        OpStoreError::ObjectNotFound {
367            object_type: id.object_type(),
368            hash: id.hex(),
369            source: Box::new(err),
370        }
371    } else {
372        to_read_error(err.into(), id)
373    }
374}
375
376fn to_read_error(
377    source: Box<dyn std::error::Error + Send + Sync>,
378    id: &impl ObjectId,
379) -> OpStoreError {
380    OpStoreError::ReadObject {
381        object_type: id.object_type(),
382        hash: id.hex(),
383        source,
384    }
385}
386
387fn io_to_write_error(err: PathError, object_type: &'static str) -> OpStoreError {
388    OpStoreError::WriteObject {
389        object_type,
390        source: Box::new(err),
391    }
392}
393
394#[derive(Debug, Error)]
395enum PostDecodeError {
396    #[error("Invalid hash length (expected {expected} bytes, got {actual} bytes)")]
397    InvalidHashLength { expected: usize, actual: usize },
398    #[error("Invalid remote ref state value {0}")]
399    InvalidRemoteRefStateValue(i32),
400    #[error("Invalid number of ref target terms {0}")]
401    EvenNumberOfRefTargetTerms(usize),
402}
403
404fn operation_id_from_proto(bytes: Vec<u8>) -> Result<OperationId, PostDecodeError> {
405    if bytes.len() != OPERATION_ID_LENGTH {
406        Err(PostDecodeError::InvalidHashLength {
407            expected: OPERATION_ID_LENGTH,
408            actual: bytes.len(),
409        })
410    } else {
411        Ok(OperationId::new(bytes))
412    }
413}
414
415fn view_id_from_proto(bytes: Vec<u8>) -> Result<ViewId, PostDecodeError> {
416    if bytes.len() != VIEW_ID_LENGTH {
417        Err(PostDecodeError::InvalidHashLength {
418            expected: VIEW_ID_LENGTH,
419            actual: bytes.len(),
420        })
421    } else {
422        Ok(ViewId::new(bytes))
423    }
424}
425
426fn timestamp_to_proto(timestamp: &Timestamp) -> crate::protos::simple_op_store::Timestamp {
427    crate::protos::simple_op_store::Timestamp {
428        millis_since_epoch: timestamp.timestamp.0,
429        tz_offset: timestamp.tz_offset,
430    }
431}
432
433fn timestamp_from_proto(proto: crate::protos::simple_op_store::Timestamp) -> Timestamp {
434    Timestamp {
435        timestamp: MillisSinceEpoch(proto.millis_since_epoch),
436        tz_offset: proto.tz_offset,
437    }
438}
439
440fn operation_metadata_to_proto(
441    metadata: &OperationMetadata,
442) -> crate::protos::simple_op_store::OperationMetadata {
443    crate::protos::simple_op_store::OperationMetadata {
444        start_time: Some(timestamp_to_proto(&metadata.time.start)),
445        end_time: Some(timestamp_to_proto(&metadata.time.end)),
446        description: metadata.description.clone(),
447        hostname: metadata.hostname.clone(),
448        username: metadata.username.clone(),
449        is_snapshot: metadata.is_snapshot,
450        tags: metadata.tags.clone(),
451    }
452}
453
454fn operation_metadata_from_proto(
455    proto: crate::protos::simple_op_store::OperationMetadata,
456) -> OperationMetadata {
457    let time = TimestampRange {
458        start: timestamp_from_proto(proto.start_time.unwrap_or_default()),
459        end: timestamp_from_proto(proto.end_time.unwrap_or_default()),
460    };
461    OperationMetadata {
462        time,
463        description: proto.description,
464        hostname: proto.hostname,
465        username: proto.username,
466        is_snapshot: proto.is_snapshot,
467        tags: proto.tags,
468    }
469}
470
471fn commit_predecessors_map_to_proto(
472    map: &BTreeMap<CommitId, Vec<CommitId>>,
473) -> Vec<crate::protos::simple_op_store::CommitPredecessors> {
474    map.iter()
475        .map(
476            |(commit_id, predecessor_ids)| crate::protos::simple_op_store::CommitPredecessors {
477                commit_id: commit_id.to_bytes(),
478                predecessor_ids: predecessor_ids.iter().map(|id| id.to_bytes()).collect(),
479            },
480        )
481        .collect()
482}
483
484fn commit_predecessors_map_from_proto(
485    proto: Vec<crate::protos::simple_op_store::CommitPredecessors>,
486) -> BTreeMap<CommitId, Vec<CommitId>> {
487    proto
488        .into_iter()
489        .map(|entry| {
490            let commit_id = CommitId::new(entry.commit_id);
491            let predecessor_ids = entry
492                .predecessor_ids
493                .into_iter()
494                .map(CommitId::new)
495                .collect();
496            (commit_id, predecessor_ids)
497        })
498        .collect()
499}
500
501fn operation_to_proto(operation: &Operation) -> crate::protos::simple_op_store::Operation {
502    let (commit_predecessors, stores_commit_predecessors) = match &operation.commit_predecessors {
503        Some(map) => (commit_predecessors_map_to_proto(map), true),
504        None => (vec![], false),
505    };
506    let parents = operation.parents.iter().map(|id| id.to_bytes()).collect();
507    crate::protos::simple_op_store::Operation {
508        view_id: operation.view_id.as_bytes().to_vec(),
509        parents,
510        metadata: Some(operation_metadata_to_proto(&operation.metadata)),
511        commit_predecessors,
512        stores_commit_predecessors,
513    }
514}
515
516fn operation_from_proto(
517    proto: crate::protos::simple_op_store::Operation,
518) -> Result<Operation, PostDecodeError> {
519    let parents = proto
520        .parents
521        .into_iter()
522        .map(operation_id_from_proto)
523        .try_collect()?;
524    let view_id = view_id_from_proto(proto.view_id)?;
525    let metadata = operation_metadata_from_proto(proto.metadata.unwrap_or_default());
526    let commit_predecessors = proto
527        .stores_commit_predecessors
528        .then(|| commit_predecessors_map_from_proto(proto.commit_predecessors));
529    Ok(Operation {
530        view_id,
531        parents,
532        metadata,
533        commit_predecessors,
534    })
535}
536
537fn view_to_proto(view: &View) -> crate::protos::simple_op_store::View {
538    let wc_commit_ids = view
539        .wc_commit_ids
540        .iter()
541        .map(|(name, id)| (name.into(), id.to_bytes()))
542        .collect();
543    let head_ids = view.head_ids.iter().map(|id| id.to_bytes()).collect();
544
545    let bookmarks = bookmark_views_to_proto_legacy(&view.local_bookmarks, &view.remote_views);
546
547    let local_tags = view
548        .local_tags
549        .iter()
550        .map(|(name, target)| crate::protos::simple_op_store::Tag {
551            name: name.into(),
552            target: ref_target_to_proto(target),
553        })
554        .collect();
555
556    let remote_views = remote_views_to_proto(&view.remote_views);
557
558    let git_refs = view
559        .git_refs
560        .iter()
561        .map(|(name, target)| {
562            #[expect(deprecated)]
563            crate::protos::simple_op_store::GitRef {
564                name: name.into(),
565                commit_id: Default::default(),
566                target: ref_target_to_proto(target),
567            }
568        })
569        .collect();
570
571    let git_head = ref_target_to_proto(&view.git_head);
572
573    #[expect(deprecated)]
574    crate::protos::simple_op_store::View {
575        head_ids,
576        wc_commit_id: Default::default(),
577        wc_commit_ids,
578        bookmarks,
579        local_tags,
580        remote_views,
581        git_refs,
582        git_head_legacy: Default::default(),
583        git_head,
584        // New/loaded view should have been migrated to the latest format
585        has_git_refs_migrated_to_remote_tags: true,
586    }
587}
588
589fn view_from_proto(proto: crate::protos::simple_op_store::View) -> Result<View, PostDecodeError> {
590    // TODO: validate commit id length?
591    // For compatibility with old repos before we had support for multiple working
592    // copies
593    let mut wc_commit_ids = BTreeMap::new();
594    #[expect(deprecated)]
595    if !proto.wc_commit_id.is_empty() {
596        wc_commit_ids.insert(
597            WorkspaceName::DEFAULT.to_owned(),
598            CommitId::new(proto.wc_commit_id),
599        );
600    }
601    for (name, commit_id) in proto.wc_commit_ids {
602        wc_commit_ids.insert(WorkspaceNameBuf::from(name), CommitId::new(commit_id));
603    }
604    let head_ids = proto.head_ids.into_iter().map(CommitId::new).collect();
605
606    let (local_bookmarks, mut remote_views) = bookmark_views_from_proto_legacy(proto.bookmarks)?;
607
608    let local_tags = proto
609        .local_tags
610        .into_iter()
611        .map(|tag_proto| {
612            let name: RefNameBuf = tag_proto.name.into();
613            (name, ref_target_from_proto(tag_proto.target))
614        })
615        .collect();
616
617    let git_refs: BTreeMap<_, _> = proto
618        .git_refs
619        .into_iter()
620        .map(|git_ref| {
621            let name: GitRefNameBuf = git_ref.name.into();
622            let target = if git_ref.target.is_some() {
623                ref_target_from_proto(git_ref.target)
624            } else {
625                // Legacy format
626                #[expect(deprecated)]
627                RefTarget::normal(CommitId::new(git_ref.commit_id))
628            };
629            (name, target)
630        })
631        .collect();
632
633    // Use legacy remote_views only when new data isn't available (jj < 0.34)
634    if !proto.remote_views.is_empty() {
635        remote_views = remote_views_from_proto(proto.remote_views)?;
636    }
637
638    #[cfg(feature = "git")]
639    if !proto.has_git_refs_migrated_to_remote_tags {
640        tracing::info!("migrating Git-tracking tags");
641        let git_tags: BTreeMap<_, _> = git_refs
642            .iter()
643            .filter_map(|(full_name, target)| {
644                let name = full_name.as_str().strip_prefix("refs/tags/")?;
645                assert!(!name.is_empty());
646                let name: RefNameBuf = name.into();
647                let remote_ref = RemoteRef {
648                    target: target.clone(),
649                    state: RemoteRefState::Tracked,
650                };
651                Some((name, remote_ref))
652            })
653            .collect();
654        if !git_tags.is_empty() {
655            let git_view = remote_views
656                .entry(crate::git::REMOTE_NAME_FOR_LOCAL_GIT_REPO.to_owned())
657                .or_default();
658            assert!(git_view.tags.is_empty());
659            git_view.tags = git_tags;
660        }
661    }
662
663    #[expect(deprecated)]
664    let git_head = if proto.git_head.is_some() {
665        ref_target_from_proto(proto.git_head)
666    } else if !proto.git_head_legacy.is_empty() {
667        RefTarget::normal(CommitId::new(proto.git_head_legacy))
668    } else {
669        RefTarget::absent()
670    };
671
672    Ok(View {
673        head_ids,
674        local_bookmarks,
675        local_tags,
676        remote_views,
677        git_refs,
678        git_head,
679        wc_commit_ids,
680    })
681}
682
683fn bookmark_views_to_proto_legacy(
684    local_bookmarks: &BTreeMap<RefNameBuf, RefTarget>,
685    remote_views: &BTreeMap<RemoteNameBuf, RemoteView>,
686) -> Vec<crate::protos::simple_op_store::Bookmark> {
687    op_store::merge_join_ref_views(local_bookmarks, remote_views, |view| &view.bookmarks)
688        .map(|(name, bookmark_target)| {
689            let local_target = ref_target_to_proto(bookmark_target.local_target);
690            // TODO: Drop serialization to the old format in jj 0.40 or so.
691            let remote_bookmarks = bookmark_target
692                .remote_refs
693                .iter()
694                .map(
695                    |&(remote_name, remote_ref)| crate::protos::simple_op_store::RemoteBookmark {
696                        remote_name: remote_name.into(),
697                        target: ref_target_to_proto(&remote_ref.target),
698                        state: Some(remote_ref_state_to_proto(remote_ref.state)),
699                    },
700                )
701                .collect();
702            #[expect(deprecated)]
703            crate::protos::simple_op_store::Bookmark {
704                name: name.into(),
705                local_target,
706                remote_bookmarks,
707            }
708        })
709        .collect()
710}
711
712type BookmarkViews = (
713    BTreeMap<RefNameBuf, RefTarget>,
714    BTreeMap<RemoteNameBuf, RemoteView>,
715);
716
717fn bookmark_views_from_proto_legacy(
718    bookmarks_legacy: Vec<crate::protos::simple_op_store::Bookmark>,
719) -> Result<BookmarkViews, PostDecodeError> {
720    let mut local_bookmarks: BTreeMap<RefNameBuf, RefTarget> = BTreeMap::new();
721    let mut remote_views: BTreeMap<RemoteNameBuf, RemoteView> = BTreeMap::new();
722    for bookmark_proto in bookmarks_legacy {
723        let bookmark_name: RefNameBuf = bookmark_proto.name.into();
724        let local_target = ref_target_from_proto(bookmark_proto.local_target);
725        #[expect(deprecated)]
726        let remote_bookmarks = bookmark_proto.remote_bookmarks;
727        for remote_bookmark in remote_bookmarks {
728            let remote_name: RemoteNameBuf = remote_bookmark.remote_name.into();
729            let state = match remote_bookmark.state {
730                Some(n) => remote_ref_state_from_proto(n)?,
731                // Legacy view saved by jj < 0.11. The proto field is not
732                // changed to non-optional type because that would break forward
733                // compatibility. Zero may be omitted if the field is optional.
734                None => RemoteRefState::New,
735            };
736            let remote_view = remote_views.entry(remote_name).or_default();
737            let remote_ref = RemoteRef {
738                target: ref_target_from_proto(remote_bookmark.target),
739                state,
740            };
741            remote_view
742                .bookmarks
743                .insert(bookmark_name.clone(), remote_ref);
744        }
745        if local_target.is_present() {
746            local_bookmarks.insert(bookmark_name, local_target);
747        }
748    }
749    Ok((local_bookmarks, remote_views))
750}
751
752fn remote_views_to_proto(
753    remote_views: &BTreeMap<RemoteNameBuf, RemoteView>,
754) -> Vec<crate::protos::simple_op_store::RemoteView> {
755    remote_views
756        .iter()
757        .map(|(name, view)| crate::protos::simple_op_store::RemoteView {
758            name: name.into(),
759            bookmarks: remote_refs_to_proto(&view.bookmarks),
760            tags: remote_refs_to_proto(&view.tags),
761        })
762        .collect()
763}
764
765fn remote_views_from_proto(
766    remote_views_proto: Vec<crate::protos::simple_op_store::RemoteView>,
767) -> Result<BTreeMap<RemoteNameBuf, RemoteView>, PostDecodeError> {
768    remote_views_proto
769        .into_iter()
770        .map(|proto| {
771            let name: RemoteNameBuf = proto.name.into();
772            let view = RemoteView {
773                bookmarks: remote_refs_from_proto(proto.bookmarks)?,
774                tags: remote_refs_from_proto(proto.tags)?,
775            };
776            Ok((name, view))
777        })
778        .collect()
779}
780
781fn remote_refs_to_proto(
782    remote_refs: &BTreeMap<RefNameBuf, RemoteRef>,
783) -> Vec<crate::protos::simple_op_store::RemoteRef> {
784    remote_refs
785        .iter()
786        .map(
787            |(name, remote_ref)| crate::protos::simple_op_store::RemoteRef {
788                name: name.into(),
789                target_terms: ref_target_to_terms_proto(&remote_ref.target),
790                state: remote_ref_state_to_proto(remote_ref.state),
791            },
792        )
793        .collect()
794}
795
796fn remote_refs_from_proto(
797    remote_refs_proto: Vec<crate::protos::simple_op_store::RemoteRef>,
798) -> Result<BTreeMap<RefNameBuf, RemoteRef>, PostDecodeError> {
799    remote_refs_proto
800        .into_iter()
801        .map(|proto| {
802            let name: RefNameBuf = proto.name.into();
803            let remote_ref = RemoteRef {
804                target: ref_target_from_terms_proto(proto.target_terms)?,
805                state: remote_ref_state_from_proto(proto.state)?,
806            };
807            Ok((name, remote_ref))
808        })
809        .collect()
810}
811
812fn ref_target_to_terms_proto(
813    value: &RefTarget,
814) -> Vec<crate::protos::simple_op_store::RefTargetTerm> {
815    value
816        .as_merge()
817        .iter()
818        .map(|term| term.as_ref().map(|id| id.to_bytes()))
819        .map(|value| crate::protos::simple_op_store::RefTargetTerm { value })
820        .collect()
821}
822
823fn ref_target_from_terms_proto(
824    proto: Vec<crate::protos::simple_op_store::RefTargetTerm>,
825) -> Result<RefTarget, PostDecodeError> {
826    let terms: SmallVec<[_; 1]> = proto
827        .into_iter()
828        .map(|crate::protos::simple_op_store::RefTargetTerm { value }| value.map(CommitId::new))
829        .collect();
830    if terms.len().is_multiple_of(2) {
831        Err(PostDecodeError::EvenNumberOfRefTargetTerms(terms.len()))
832    } else {
833        Ok(RefTarget::from_merge(Merge::from_vec(terms)))
834    }
835}
836
837fn ref_target_to_proto(value: &RefTarget) -> Option<crate::protos::simple_op_store::RefTarget> {
838    let term_to_proto =
839        |term: &Option<CommitId>| crate::protos::simple_op_store::ref_conflict::Term {
840            value: term.as_ref().map(|id| id.to_bytes()),
841        };
842    let merge = value.as_merge();
843    let conflict_proto = crate::protos::simple_op_store::RefConflict {
844        removes: merge.removes().map(term_to_proto).collect(),
845        adds: merge.adds().map(term_to_proto).collect(),
846    };
847    let proto = crate::protos::simple_op_store::RefTarget {
848        value: Some(crate::protos::simple_op_store::ref_target::Value::Conflict(
849            conflict_proto,
850        )),
851    };
852    Some(proto)
853}
854
855#[expect(deprecated)]
856#[cfg(test)]
857fn ref_target_to_proto_legacy(
858    value: &RefTarget,
859) -> Option<crate::protos::simple_op_store::RefTarget> {
860    if let Some(id) = value.as_normal() {
861        let proto = crate::protos::simple_op_store::RefTarget {
862            value: Some(crate::protos::simple_op_store::ref_target::Value::CommitId(
863                id.to_bytes(),
864            )),
865        };
866        Some(proto)
867    } else if value.has_conflict() {
868        let ref_conflict_proto = crate::protos::simple_op_store::RefConflictLegacy {
869            removes: value.removed_ids().map(|id| id.to_bytes()).collect(),
870            adds: value.added_ids().map(|id| id.to_bytes()).collect(),
871        };
872        let proto = crate::protos::simple_op_store::RefTarget {
873            value: Some(
874                crate::protos::simple_op_store::ref_target::Value::ConflictLegacy(
875                    ref_conflict_proto,
876                ),
877            ),
878        };
879        Some(proto)
880    } else {
881        assert!(value.is_absent());
882        None
883    }
884}
885
886fn ref_target_from_proto(
887    maybe_proto: Option<crate::protos::simple_op_store::RefTarget>,
888) -> RefTarget {
889    // TODO: Delete legacy format handling when we decide to drop support for views
890    // saved by jj <= 0.8.
891    let Some(proto) = maybe_proto else {
892        // Legacy absent id
893        return RefTarget::absent();
894    };
895    match proto.value.unwrap() {
896        crate::protos::simple_op_store::ref_target::Value::CommitId(id) => {
897            // Legacy non-conflicting id
898            RefTarget::normal(CommitId::new(id))
899        }
900        #[expect(deprecated)]
901        crate::protos::simple_op_store::ref_target::Value::ConflictLegacy(conflict) => {
902            // Legacy conflicting ids
903            let removes = conflict.removes.into_iter().map(CommitId::new);
904            let adds = conflict.adds.into_iter().map(CommitId::new);
905            RefTarget::from_legacy_form(removes, adds)
906        }
907        crate::protos::simple_op_store::ref_target::Value::Conflict(conflict) => {
908            let term_from_proto = |term: crate::protos::simple_op_store::ref_conflict::Term| {
909                term.value.map(CommitId::new)
910            };
911            let removes = conflict.removes.into_iter().map(term_from_proto);
912            let adds = conflict.adds.into_iter().map(term_from_proto);
913            RefTarget::from_merge(Merge::from_removes_adds(removes, adds))
914        }
915    }
916}
917
918fn remote_ref_state_to_proto(state: RemoteRefState) -> i32 {
919    let proto_state = match state {
920        RemoteRefState::New => crate::protos::simple_op_store::RemoteRefState::New,
921        RemoteRefState::Tracked => crate::protos::simple_op_store::RemoteRefState::Tracked,
922    };
923    proto_state as i32
924}
925
926fn remote_ref_state_from_proto(proto_value: i32) -> Result<RemoteRefState, PostDecodeError> {
927    let proto_state = proto_value
928        .try_into()
929        .map_err(|prost::UnknownEnumValue(n)| PostDecodeError::InvalidRemoteRefStateValue(n))?;
930    let state = match proto_state {
931        crate::protos::simple_op_store::RemoteRefState::New => RemoteRefState::New,
932        crate::protos::simple_op_store::RemoteRefState::Tracked => RemoteRefState::Tracked,
933    };
934    Ok(state)
935}
936
937#[cfg(test)]
938mod tests {
939    use insta::assert_snapshot;
940    use itertools::Itertools as _;
941    use maplit::btreemap;
942    use maplit::hashmap;
943    use maplit::hashset;
944
945    use super::*;
946    use crate::hex_util;
947    use crate::tests::new_temp_dir;
948
949    fn create_view() -> View {
950        let new_remote_ref = |target: &RefTarget| RemoteRef {
951            target: target.clone(),
952            state: RemoteRefState::New,
953        };
954        let tracked_remote_ref = |target: &RefTarget| RemoteRef {
955            target: target.clone(),
956            state: RemoteRefState::Tracked,
957        };
958        let head_id1 = CommitId::from_hex("aaa111");
959        let head_id2 = CommitId::from_hex("aaa222");
960        let bookmark_main_local_target = RefTarget::normal(CommitId::from_hex("ccc111"));
961        let bookmark_main_origin_target = RefTarget::normal(CommitId::from_hex("ccc222"));
962        let bookmark_deleted_origin_target = RefTarget::normal(CommitId::from_hex("ccc333"));
963        let tag_v1_local_target = RefTarget::normal(CommitId::from_hex("ddd111"));
964        let tag_v1_origin_target = RefTarget::normal(CommitId::from_hex("ddd222"));
965        let tag_deleted_origin_target = RefTarget::normal(CommitId::from_hex("ddd333"));
966        let git_refs_main_target = RefTarget::normal(CommitId::from_hex("fff111"));
967        let git_refs_feature_target = RefTarget::from_legacy_form(
968            [CommitId::from_hex("fff111")],
969            [CommitId::from_hex("fff222"), CommitId::from_hex("fff333")],
970        );
971        let default_wc_commit_id = CommitId::from_hex("abc111");
972        let test_wc_commit_id = CommitId::from_hex("abc222");
973        View {
974            head_ids: hashset! {head_id1, head_id2},
975            local_bookmarks: btreemap! {
976                "main".into() => bookmark_main_local_target,
977            },
978            local_tags: btreemap! {
979                "v1.0".into() => tag_v1_local_target,
980            },
981            remote_views: btreemap! {
982                "origin".into() => RemoteView {
983                    bookmarks: btreemap! {
984                        "main".into() => tracked_remote_ref(&bookmark_main_origin_target),
985                        "deleted".into() => new_remote_ref(&bookmark_deleted_origin_target),
986                    },
987                    tags: btreemap! {
988                        "v1.0".into() => tracked_remote_ref(&tag_v1_origin_target),
989                        "deleted".into() => new_remote_ref(&tag_deleted_origin_target),
990                    },
991                },
992            },
993            git_refs: btreemap! {
994                "refs/heads/main".into() => git_refs_main_target,
995                "refs/heads/feature".into() => git_refs_feature_target,
996            },
997            git_head: RefTarget::normal(CommitId::from_hex("fff111")),
998            wc_commit_ids: btreemap! {
999                WorkspaceName::DEFAULT.to_owned() => default_wc_commit_id,
1000                "test".into() => test_wc_commit_id,
1001            },
1002        }
1003    }
1004
1005    fn create_operation() -> Operation {
1006        let pad_id_bytes = |hex: &str, len: usize| {
1007            let mut bytes = hex_util::decode_hex(hex).unwrap();
1008            bytes.resize(len, b'\0');
1009            bytes
1010        };
1011        Operation {
1012            view_id: ViewId::new(pad_id_bytes("aaa111", VIEW_ID_LENGTH)),
1013            parents: vec![
1014                OperationId::new(pad_id_bytes("bbb111", OPERATION_ID_LENGTH)),
1015                OperationId::new(pad_id_bytes("bbb222", OPERATION_ID_LENGTH)),
1016            ],
1017            metadata: OperationMetadata {
1018                time: TimestampRange {
1019                    start: Timestamp {
1020                        timestamp: MillisSinceEpoch(123456789),
1021                        tz_offset: 3600,
1022                    },
1023                    end: Timestamp {
1024                        timestamp: MillisSinceEpoch(123456800),
1025                        tz_offset: 3600,
1026                    },
1027                },
1028                description: "check out foo".to_string(),
1029                hostname: "some.host.example.com".to_string(),
1030                username: "someone".to_string(),
1031                is_snapshot: false,
1032                tags: hashmap! {
1033                    "key1".to_string() => "value1".to_string(),
1034                    "key2".to_string() => "value2".to_string(),
1035                },
1036            },
1037            commit_predecessors: Some(btreemap! {
1038                CommitId::from_hex("111111") => vec![],
1039                CommitId::from_hex("222222") => vec![
1040                    CommitId::from_hex("333333"),
1041                    CommitId::from_hex("444444"),
1042                ],
1043            }),
1044        }
1045    }
1046
1047    #[test]
1048    fn test_hash_view() {
1049        // Test exact output so we detect regressions in compatibility
1050        assert_snapshot!(
1051            ViewId::new(blake2b_hash(&create_view()).to_vec()).hex(),
1052            @"2c0b174d117ca85e7faa96f6d997362403105e8eb31e7f82ac9abd3dc48ae62683e9a76ef5d117ebc8a743d17e1945236df9ccefd7574f7e4b5336a63796b967"
1053        );
1054    }
1055
1056    #[test]
1057    fn test_hash_operation() {
1058        // Test exact output so we detect regressions in compatibility
1059        assert_snapshot!(
1060            OperationId::new(blake2b_hash(&create_operation()).to_vec()).hex(),
1061            @"b544c80b5ededdd64d0f10468fa636a06b83c45d94dd9bdac95319f7fe11fee536506c5c110681dee6233e69db7647683e732939a3ec88e867250efd765fea18"
1062        );
1063    }
1064
1065    #[test]
1066    fn test_read_write_view() {
1067        let temp_dir = new_temp_dir();
1068        let root_data = RootOperationData {
1069            root_commit_id: CommitId::from_hex("000000"),
1070        };
1071        let store = SimpleOpStore::init(temp_dir.path(), root_data).unwrap();
1072        let view = create_view();
1073        let view_id = store.write_view(&view).block_on().unwrap();
1074        let read_view = store.read_view(&view_id).block_on().unwrap();
1075        assert_eq!(read_view, view);
1076    }
1077
1078    #[test]
1079    fn test_read_write_operation() {
1080        let temp_dir = new_temp_dir();
1081        let root_data = RootOperationData {
1082            root_commit_id: CommitId::from_hex("000000"),
1083        };
1084        let store = SimpleOpStore::init(temp_dir.path(), root_data).unwrap();
1085        let operation = create_operation();
1086        let op_id = store.write_operation(&operation).block_on().unwrap();
1087        let read_operation = store.read_operation(&op_id).block_on().unwrap();
1088        assert_eq!(read_operation, operation);
1089    }
1090
1091    #[test]
1092    fn test_remote_views_legacy_roundtrip() {
1093        let mut view = create_view();
1094        assert!(!view.remote_views.is_empty());
1095        for remote_view in view.remote_views.values_mut() {
1096            // remote tags cannot be preserved in "legacy" format
1097            remote_view.tags.clear();
1098        }
1099        let mut proto = view_to_proto(&view);
1100        proto.remote_views.clear(); // drop "new" format
1101        let view_reconstructed = view_from_proto(proto).unwrap();
1102        assert_eq!(view.remote_views, view_reconstructed.remote_views);
1103    }
1104
1105    #[test]
1106    fn test_remote_views_new_roundtrip() {
1107        let view = create_view();
1108        assert!(!view.remote_views.is_empty());
1109        let mut proto = view_to_proto(&view);
1110        for bookmark in &mut proto.bookmarks {
1111            #[expect(deprecated)]
1112            bookmark.remote_bookmarks.clear(); // drop "legacy" format
1113        }
1114        let view_reconstructed = view_from_proto(proto).unwrap();
1115        assert_eq!(view.remote_views, view_reconstructed.remote_views);
1116    }
1117
1118    #[test]
1119    fn test_migrate_git_refs_to_remote_tags() {
1120        let tracked_remote_ref = |target: &RefTarget| RemoteRef {
1121            target: target.clone(),
1122            state: RemoteRefState::Tracked,
1123        };
1124        let git_ref_to_proto = |name: &str, ref_target| crate::protos::simple_op_store::GitRef {
1125            name: name.to_owned(),
1126            #[expect(deprecated)]
1127            commit_id: Default::default(),
1128            target: ref_target_to_proto(ref_target),
1129        };
1130        let v1_target = RefTarget::normal(CommitId::from_hex("111111"));
1131        let main_target = RefTarget::normal(CommitId::from_hex("222222"));
1132        let orig_remote_views = btreemap! {
1133            "git".into() => RemoteView {
1134                bookmarks: btreemap! {
1135                    "main".into() => tracked_remote_ref(&main_target),
1136                },
1137                tags: btreemap! {},
1138            },
1139        };
1140        let proto = crate::protos::simple_op_store::View {
1141            remote_views: remote_views_to_proto(&orig_remote_views),
1142            git_refs: vec![
1143                git_ref_to_proto("refs/tags/v1.0", &v1_target),
1144                git_ref_to_proto("refs/heads/main", &main_target),
1145            ],
1146            has_git_refs_migrated_to_remote_tags: false,
1147            ..Default::default()
1148        };
1149
1150        let view = view_from_proto(proto).unwrap();
1151        if cfg!(feature = "git") {
1152            assert_eq!(
1153                view.remote_views,
1154                btreemap! {
1155                    "git".into() => RemoteView {
1156                        bookmarks: btreemap! {
1157                            "main".into() => tracked_remote_ref(&main_target),
1158                        },
1159                        tags: btreemap! {
1160                            "v1.0".into() => tracked_remote_ref(&v1_target),
1161                        },
1162                    },
1163                }
1164            );
1165        } else {
1166            assert_eq!(view.remote_views, orig_remote_views);
1167        }
1168
1169        // Once migrated, "git" remote tags shouldn't be populated again.
1170        let mut proto = view_to_proto(&view);
1171        assert!(proto.has_git_refs_migrated_to_remote_tags);
1172        for view_proto in &mut proto.remote_views {
1173            view_proto.tags.clear();
1174        }
1175        let view = view_from_proto(proto).unwrap();
1176        assert_eq!(view.remote_views, orig_remote_views);
1177    }
1178
1179    #[test]
1180    fn test_bookmark_views_legacy_roundtrip() {
1181        let new_remote_ref = |target: &RefTarget| RemoteRef {
1182            target: target.clone(),
1183            state: RemoteRefState::New,
1184        };
1185        let tracked_remote_ref = |target: &RefTarget| RemoteRef {
1186            target: target.clone(),
1187            state: RemoteRefState::Tracked,
1188        };
1189        let local_bookmark1_target = RefTarget::normal(CommitId::from_hex("111111"));
1190        let local_bookmark3_target = RefTarget::normal(CommitId::from_hex("222222"));
1191        let git_bookmark1_target = RefTarget::normal(CommitId::from_hex("333333"));
1192        let remote1_bookmark1_target = RefTarget::normal(CommitId::from_hex("444444"));
1193        let remote2_bookmark2_target = RefTarget::normal(CommitId::from_hex("555555"));
1194        let remote2_bookmark4_target = RefTarget::normal(CommitId::from_hex("666666"));
1195        let local_bookmarks = btreemap! {
1196            "bookmark1".into() => local_bookmark1_target.clone(),
1197            "bookmark3".into() => local_bookmark3_target.clone(),
1198        };
1199        let remote_views = btreemap! {
1200            "git".into() => RemoteView {
1201                bookmarks: btreemap! {
1202                    "bookmark1".into() => tracked_remote_ref(&git_bookmark1_target),
1203                },
1204                tags: btreemap! {},
1205            },
1206            "remote1".into() => RemoteView {
1207                bookmarks: btreemap! {
1208                    "bookmark1".into() => tracked_remote_ref(&remote1_bookmark1_target),
1209                },
1210                tags: btreemap! {},
1211            },
1212            "remote2".into() => RemoteView {
1213                bookmarks: btreemap! {
1214                    // "bookmark2" is non-tracking. "bookmark4" is tracking, but locally deleted.
1215                    "bookmark2".into() => new_remote_ref(&remote2_bookmark2_target),
1216                    "bookmark4".into() => tracked_remote_ref(&remote2_bookmark4_target),
1217                },
1218                tags: btreemap! {},
1219            },
1220        };
1221
1222        let bookmarks_legacy = bookmark_views_to_proto_legacy(&local_bookmarks, &remote_views);
1223        assert_eq!(
1224            bookmarks_legacy
1225                .iter()
1226                .map(|proto| &proto.name)
1227                .sorted()
1228                .collect_vec(),
1229            vec!["bookmark1", "bookmark2", "bookmark3", "bookmark4"],
1230        );
1231
1232        let (local_bookmarks_reconstructed, remote_views_reconstructed) =
1233            bookmark_views_from_proto_legacy(bookmarks_legacy).unwrap();
1234        assert_eq!(local_bookmarks_reconstructed, local_bookmarks);
1235        assert_eq!(remote_views_reconstructed, remote_views);
1236    }
1237
1238    #[test]
1239    fn test_ref_target_change_delete_order_roundtrip() {
1240        let target = RefTarget::from_merge(Merge::from_removes_adds(
1241            vec![Some(CommitId::from_hex("111111"))],
1242            vec![Some(CommitId::from_hex("222222")), None],
1243        ));
1244        let maybe_proto = ref_target_to_proto(&target);
1245        assert_eq!(ref_target_from_proto(maybe_proto), target);
1246
1247        // If it were legacy format, order of None entry would be lost.
1248        let target = RefTarget::from_merge(Merge::from_removes_adds(
1249            vec![Some(CommitId::from_hex("111111"))],
1250            vec![None, Some(CommitId::from_hex("222222"))],
1251        ));
1252        let maybe_proto = ref_target_to_proto(&target);
1253        assert_eq!(ref_target_from_proto(maybe_proto), target);
1254    }
1255
1256    #[test]
1257    fn test_ref_target_legacy_roundtrip() {
1258        let target = RefTarget::absent();
1259        let maybe_proto = ref_target_to_proto_legacy(&target);
1260        assert_eq!(ref_target_from_proto(maybe_proto), target);
1261
1262        let target = RefTarget::normal(CommitId::from_hex("111111"));
1263        let maybe_proto = ref_target_to_proto_legacy(&target);
1264        assert_eq!(ref_target_from_proto(maybe_proto), target);
1265
1266        // N-way conflict
1267        let target = RefTarget::from_legacy_form(
1268            [CommitId::from_hex("111111"), CommitId::from_hex("222222")],
1269            [
1270                CommitId::from_hex("333333"),
1271                CommitId::from_hex("444444"),
1272                CommitId::from_hex("555555"),
1273            ],
1274        );
1275        let maybe_proto = ref_target_to_proto_legacy(&target);
1276        assert_eq!(ref_target_from_proto(maybe_proto), target);
1277
1278        // Change-delete conflict
1279        let target = RefTarget::from_legacy_form(
1280            [CommitId::from_hex("111111")],
1281            [CommitId::from_hex("222222")],
1282        );
1283        let maybe_proto = ref_target_to_proto_legacy(&target);
1284        assert_eq!(ref_target_from_proto(maybe_proto), target);
1285    }
1286}